Baudin Maël, Laloum Tom, Lepage Agnès, Rípodas Carolina, Ariel Federico, Frances Lisa, Crespi Martin, Gamas Pascal, Blanco Flavio Antonio, Zanetti Maria Eugenia, de Carvalho-Niebel Fernanda, Niebel Andreas
Laboratoire des Interactions Plantes-Microorganismes, Centre National de la Recherche Scientifique, Unité Mixte de Recherche 2594, F-31326 Castanet-Tolosan, France (M.B., T.L., A.L., L.F., P.G., F.d.C.-N., A.N.);Laboratoire des Interactions Plantes-Microorganismes, Institut National de la Recherche Agronomique, Unité Mixte de Recherche 441, F-31326 Castanet-Tolosan, France (M.B., T.L., A.L., L.F., P.G., F.d.C.-N., A.N.);Instituto de Biotecnología y Biología Molecular, Facultad de Ciencias Económicas, Universidad Nacional de La Plata, CP 1900 La Plata, Argentina (C.R., F.A.B., M.E.Z.); andCentre National de la Recherche Scientifique, Institute of Plant Sciences, Université Paris-Saclay, 91405 Orsay, France (F.A., M.C.).
Laboratoire des Interactions Plantes-Microorganismes, Centre National de la Recherche Scientifique, Unité Mixte de Recherche 2594, F-31326 Castanet-Tolosan, France (M.B., T.L., A.L., L.F., P.G., F.d.C.-N., A.N.);Laboratoire des Interactions Plantes-Microorganismes, Institut National de la Recherche Agronomique, Unité Mixte de Recherche 441, F-31326 Castanet-Tolosan, France (M.B., T.L., A.L., L.F., P.G., F.d.C.-N., A.N.);Instituto de Biotecnología y Biología Molecular, Facultad de Ciencias Económicas, Universidad Nacional de La Plata, CP 1900 La Plata, Argentina (C.R., F.A.B., M.E.Z.); andCentre National de la Recherche Scientifique, Institute of Plant Sciences, Université Paris-Saclay, 91405 Orsay, France (F.A., M.C.)
Plant Physiol. 2015 Dec;169(4):2761-73. doi: 10.1104/pp.15.01144. Epub 2015 Oct 2.
The endosymbiotic association between legumes and soil bacteria called rhizobia leads to the formation of a new root-derived organ called the nodule in which differentiated bacteria convert atmospheric nitrogen into a form that can be assimilated by the host plant. Successful root infection by rhizobia and nodule organogenesis require the activation of symbiotic genes that are controlled by a set of transcription factors (TFs). We recently identified Medicago truncatula nuclear factor-YA1 (MtNF-YA1) and MtNF-YA2 as two M. truncatula TFs playing a central role during key steps of the Sinorhizobium meliloti-M. truncatula symbiotic interaction. NF-YA TFs interact with NF-YB and NF-YC subunits to regulate target genes containing the CCAAT box consensus sequence. In this study, using a yeast two-hybrid screen approach, we identified the NF-YB and NF-YC subunits able to interact with MtNF-YA1 and MtNF-YA2. In yeast (Saccharomyces cerevisiae) and in planta, we further demonstrated by both coimmunoprecipitation and bimolecular fluorescence complementation that these NF-YA, -B, and -C subunits interact and form a stable NF-Y heterotrimeric complex. Reverse genetic and chromatin immunoprecipitation-PCR approaches revealed the importance of these newly identified NF-YB and NF-YC subunits for rhizobial symbiosis and binding to the promoter of MtERN1 (for Ethylene Responsive factor required for Nodulation), a direct target gene of MtNF-YA1 and MtNF-YA2. Finally, we verified that a similar trimer is formed in planta by the common bean (Phaseolus vulgaris) NF-Y subunits, revealing the existence of evolutionary conserved NF-Y protein complexes to control nodulation in leguminous plants. This sheds light on the process whereby an ancient heterotrimeric TF mainly controlling cell division in animals has acquired specialized functions in plants.
豆科植物与被称为根瘤菌的土壤细菌之间的内共生关联会导致形成一种新的源自根的器官,即根瘤,在根瘤中,分化的细菌将大气中的氮转化为宿主植物能够吸收的形式。根瘤菌成功侵染根部以及根瘤器官发生需要激活由一组转录因子(TFs)控制的共生基因。我们最近鉴定出蒺藜苜蓿核因子-YA1(MtNF-YA1)和MtNF-YA2是在苜蓿中华根瘤菌与蒺藜苜蓿共生相互作用的关键步骤中发挥核心作用的两个蒺藜苜蓿转录因子。NF-YA转录因子与NF-YB和NF-YC亚基相互作用,以调控含有CCAAT框共有序列的靶基因。在本研究中,我们使用酵母双杂交筛选方法,鉴定出了能够与MtNF-YA1和MtNF-YA2相互作用的NF-YB和NF-YC亚基。在酵母(酿酒酵母)和植物体内,我们通过免疫共沉淀和双分子荧光互补进一步证明,这些NF-YA、-B和-C亚基相互作用并形成稳定的NF-Y异源三聚体复合物。反向遗传学和染色质免疫沉淀-PCR方法揭示了这些新鉴定的NF-YB和NF-YC亚基对于根瘤菌共生以及与MtERN1(结瘤所需的乙烯响应因子)启动子结合的重要性,MtERN1是MtNF-YA1和MtNF-YA2的直接靶基因。最后,我们证实菜豆(Phaseolus vulgaris)的NF-Y亚基在植物体内形成了类似三聚体,揭示了存在进化保守的NF-Y蛋白复合物来控制豆科植物的结瘤。这为一个主要控制动物细胞分裂的古老异源三聚体转录因子在植物中获得特殊功能的过程提供了线索。